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Recent developments of the meshless radial point interpolation method for time-domain electromagnetics

机译:时域电磁学的无网格径向点插值方法的最新进展

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摘要

Meshless methods are a promising new field in computational electromagnetics. Instead of relying on an explicit mesh topology, a numerical solution is computed on an unstructured set of collocation nodes. This allows to model fine geometrical details with high accuracy and facilitates the adaptation of node distributions for optimization or refinement purposes. The radial point interpolation method (RPIM) is a meshless method based on radial basis functions. In this paper, the current state of the RPIM in electromagnetics is reviewed. The localized RPIM scheme is summarized, and the interpolation accuracy is discussed in dependence of important parameters. A time-domain implementation is presented, and important time iteration aspects are reviewed. New formulations for perfectly matched layers and waveguide ports are introduced. An unconditionally stable RPIM scheme is summarized, and its advantages for hybridization with the classical RPIM scheme are discussed in a practical example. The capabilities of an adaptive time-domain refinement strategy based on the experiences on a frequency-domain solver are discussed.
机译:无网格方法是计算电磁学中一个有希望的新领域。无需依赖显式的网格拓扑,而是在非结构化的并置节点集上计算数值解。这允许以高精度对精细的几何细节建模,并有助于出于优化或细化目的而适应节点分布。径向点插值方法(RPIM)是基于径向基函数的无网格方法。本文综述了RPIM在电磁学中的现状。总结了局部RPIM方案,并根据重要参数讨论了插值精度。提出了时域实现,并对重要的时间迭代方面进行了回顾。介绍了用于完美匹配的层和波导端口的新配方。总结了一个无条件稳定的RPIM方案,并在一个实际示例中讨论了其与经典RPIM方案杂交的优势。讨论了基于频域求解器的经验的自适应时域优化策略的功能。

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